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Somanath Dash

Deceased

from New York, NY

Somanath Dash Phones & Addresses

  • New York, NY
  • Huntington Beach, CA
  • 4 Twin Brook Ct, South Burlington, VT 05403 • 802-658-6609
  • Poughkeepsie, NY

Us Patents

  • Forming Wide Dielectric-Filled Isolation Trenches In Semi-Conductors

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  • US Patent:
    51734397, Dec 22, 1992
  • Filed:
    Apr 2, 1991
  • Appl. No.:
    7/679568
  • Inventors:
    Somanath Dash - Burlington VT
    Michael L. Kerbaugh - Burlington VT
    Charles W. Koburger - Essex VT
    Brian J. Machesney - Burlington VT
    Nitin B. Parekh - Austin TX
  • Assignee:
    International Business Machines Corporation - Armonk NY
  • International Classification:
    H01L 2176
  • US Classification:
    437 67
  • Abstract:
    A method of forming a planarized dielectric filled wide shallow trench in a semi-conductor substrate is provided. A layer of etch stop such as Si. sub. 3 N. sub. 4 is deposited onto the semi-conductor substrate, and wide trenches are formed through the Si. sub. 3 N. sub. 4 into the substrate by conventional RIE. The surface of the substrate including the trenches have formed thereon a SiO. sub. 2 coating, conforming to the surface of the substrate. A layer of etch resistant material such as polysilicon is deposited onto the SiO. sub. 2 material. The polysilicon outside the width of the trenches is then removed by chemical-mechanical polishing to expose the SiO. sub. 2 there below, while leaving the SiO. sub. 2 above the trenches covered with polysilicon. The exposed SiO. sub.
  • Method Of Making Dense Complementary Transistors

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  • US Patent:
    43996051, Aug 23, 1983
  • Filed:
    Feb 26, 1982
  • Appl. No.:
    6/352990
  • Inventors:
    Somanath Dash - South Burlington VT
    Richard R. Garnache - South Burlington VT
    Ronald R. Troutman - Essex Junction VT
  • Assignee:
    International Business Machines Corporation - Armonk NY
  • International Classification:
    H01L 21265
    H01L 2128
  • US Classification:
    29571
  • Abstract:
    A method is provided for making complementary field effect transistors in a semiconductor layer having a first portion including an N type transistor with a channel region defined by N+ source and drain regions and having a second portion including a P type transistor with a channel region defined by P+ source and drain regions. An insulating layer is disposed over the first and second portions with thin insulating films formed over the channel regions. The steps of the method include applying a masking layer over the insulating layer having an opening over one of the portions, introducing a first impurity into the channel region of the one portion for channel tailoring purposes, depositing a first conductive refractory material on the thin insulating film located over the channel region of the one portion, removing the masking layer, introducing a second impurity into the channel region of the other portion for channel tailoring purposes and depositing a second conductive material on the thin insulating film located over the channel region of the other portion and in contact with the first conductive material. The first and second conductive materials have different work functions. The first conductive material is, preferably, platinum silicide while the second conductive material may be aluminum.

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Work:
SRM Technologies pvt ltd - Senior system analyst (2009)
Relationship:
Married
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